Reland "Only enable conference mode simulcast allocations with flag enabled"
This is a reland of 32ca95145c4636374266f5b5d4d1ac43658bc758 Fix includes not enabling the screenshare conference behavior on non screenshare sources even if the flag is enabled. Original change's description: > Only enable conference mode simulcast allocations with flag enabled > > Non-conference mode simulcast screenshares were mistakenly using the > conference mode semantics in the simulcast rate allocator, which broke > spec compliant usage in some situation. > > This behavior should only be used when explicitly using the SDP entry > "a=x-google-flag:conference" in both offer and answer. > > Bug: webrtc:11310, chromium:1093819 > Change-Id: Ibcba75c88a8405d60467546b33977a782e04e469 > Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/179081 > Reviewed-by: Harald Alvestrand <hta@webrtc.org> > Reviewed-by: Ilya Nikolaevskiy <ilnik@webrtc.org> > Commit-Queue: Florent Castelli <orphis@webrtc.org> > Cr-Commit-Position: refs/heads/master@{#31828} Bug: webrtc:11310 Bug: chromium:1093819 Change-Id: Ic933f93a5c4bad20583354fe821f8a1170e911cd Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/180802 Commit-Queue: Florent Castelli <orphis@webrtc.org> Reviewed-by: Ilya Nikolaevskiy <ilnik@webrtc.org> Reviewed-by: Harald Alvestrand <hta@webrtc.org> Cr-Commit-Position: refs/heads/master@{#31847}
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@ -49,4 +49,6 @@ VideoBitrateAllocation VideoBitrateAllocator::Allocate(
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return GetAllocation(parameters.total_bitrate.bps(), parameters.framerate);
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}
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void VideoBitrateAllocator::SetLegacyConferenceMode(bool enabled) {}
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} // namespace webrtc
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@ -40,6 +40,10 @@ class VideoBitrateAllocator {
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virtual VideoBitrateAllocation Allocate(
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VideoBitrateAllocationParameters parameters);
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// Deprecated: Only used to work around issues with the legacy conference
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// screenshare mode and shouldn't be needed by any subclasses.
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virtual void SetLegacyConferenceMode(bool enabled);
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};
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class VideoBitrateAllocationObserver {
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@ -83,6 +83,7 @@ VideoCodec::VideoCodec()
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mode(VideoCodecMode::kRealtimeVideo),
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expect_encode_from_texture(false),
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timing_frame_thresholds({0, 0}),
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legacy_conference_mode(false),
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codec_specific_() {}
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VideoCodecVP8* VideoCodec::VP8() {
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@ -146,6 +146,9 @@ class RTC_EXPORT VideoCodec {
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uint16_t outlier_ratio_percent;
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} timing_frame_thresholds;
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// Legacy Google conference mode flag for simulcast screenshare
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bool legacy_conference_mode;
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bool operator==(const VideoCodec& other) const = delete;
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bool operator!=(const VideoCodec& other) const = delete;
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@ -55,7 +55,8 @@ VideoEncoderConfig::VideoEncoderConfig()
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min_transmit_bitrate_bps(0),
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max_bitrate_bps(0),
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bitrate_priority(1.0),
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number_of_streams(0) {}
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number_of_streams(0),
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legacy_conference_mode(false) {}
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VideoEncoderConfig::VideoEncoderConfig(VideoEncoderConfig&&) = default;
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@ -176,6 +176,9 @@ class VideoEncoderConfig {
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// Max number of encoded VideoStreams to produce.
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size_t number_of_streams;
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// Legacy Google conference mode flag for simulcast screenshare
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bool legacy_conference_mode;
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private:
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// Access to the copy constructor is private to force use of the Copy()
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// method for those exceptional cases where we do use it.
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@ -619,6 +619,10 @@ void SimulcastEncoderAdapter::PopulateStreamCodec(
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// TODO(ronghuawu): what to do with targetBitrate.
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stream_codec->startBitrate = start_bitrate_kbps;
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// Legacy screenshare mode is only enabled for the first simulcast layer
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stream_codec->legacy_conference_mode =
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inst.legacy_conference_mode && stream_index == 0;
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}
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bool SimulcastEncoderAdapter::Initialized() const {
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@ -2399,6 +2399,8 @@ WebRtcVideoChannel::WebRtcVideoSendStream::CreateVideoEncoderConfig(
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}
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}
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encoder_config.legacy_conference_mode = parameters_.conference_mode;
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int max_qp = kDefaultQpMax;
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codec.GetParam(kCodecParamMaxQuantization, &max_qp);
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encoder_config.video_stream_factory =
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@ -3394,7 +3396,7 @@ std::vector<webrtc::VideoStream> EncoderStreamFactory::CreateEncoderStreams(
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((absl::EqualsIgnoreCase(codec_name_, kVp8CodecName) ||
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absl::EqualsIgnoreCase(codec_name_, kH264CodecName)) &&
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is_screenshare_ && conference_mode_)) {
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return CreateSimulcastOrConfereceModeScreenshareStreams(
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return CreateSimulcastOrConferenceModeScreenshareStreams(
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width, height, encoder_config, experimental_min_bitrate);
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}
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@ -3483,7 +3485,7 @@ EncoderStreamFactory::CreateDefaultVideoStreams(
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}
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std::vector<webrtc::VideoStream>
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EncoderStreamFactory::CreateSimulcastOrConfereceModeScreenshareStreams(
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EncoderStreamFactory::CreateSimulcastOrConferenceModeScreenshareStreams(
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int width,
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int height,
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const webrtc::VideoEncoderConfig& encoder_config,
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@ -661,7 +661,7 @@ class EncoderStreamFactory
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const absl::optional<webrtc::DataRate>& experimental_min_bitrate) const;
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std::vector<webrtc::VideoStream>
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CreateSimulcastOrConfereceModeScreenshareStreams(
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CreateSimulcastOrConferenceModeScreenshareStreams(
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int width,
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int height,
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const webrtc::VideoEncoderConfig& encoder_config,
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@ -879,7 +879,7 @@ size_t LibvpxVp8Encoder::SteadyStateSize(int sid, int tid) {
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const int encoder_id = encoders_.size() - 1 - sid;
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size_t bitrate_bps;
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float fps;
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if (SimulcastUtility::IsConferenceModeScreenshare(codec_) ||
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if ((SimulcastUtility::IsConferenceModeScreenshare(codec_) && sid == 0) ||
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vpx_configs_[encoder_id].ts_number_layers <= 1) {
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// In conference screenshare there's no defined per temporal layer bitrate
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// and framerate.
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@ -523,6 +523,7 @@ TEST_F(TestVp8Impl, KeepsTimestampOnReencode) {
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codec_settings_.maxBitrate = 1000;
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codec_settings_.mode = VideoCodecMode::kScreensharing;
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codec_settings_.VP8()->numberOfTemporalLayers = 2;
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codec_settings_.legacy_conference_mode = true;
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EXPECT_CALL(*vpx, img_wrap(_, _, _, _, _, _))
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.WillOnce(Invoke([](vpx_image_t* img, vpx_img_fmt_t fmt, unsigned int d_w,
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@ -653,6 +654,7 @@ TEST_F(TestVp8Impl, GetEncoderInfoFpsAllocationScreenshareLayers) {
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codec_settings_.simulcastStream[0].maxBitrate =
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kLegacyScreenshareTl1BitrateKbps;
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codec_settings_.simulcastStream[0].numberOfTemporalLayers = 2;
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codec_settings_.legacy_conference_mode = true;
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EXPECT_EQ(WEBRTC_VIDEO_CODEC_OK,
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encoder_->InitEncode(&codec_settings_, kSettings));
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@ -61,7 +61,8 @@ float SimulcastRateAllocator::GetTemporalRateAllocation(
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SimulcastRateAllocator::SimulcastRateAllocator(const VideoCodec& codec)
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: codec_(codec),
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stable_rate_settings_(StableTargetRateExperiment::ParseFromFieldTrials()),
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rate_control_settings_(RateControlSettings::ParseFromFieldTrials()) {}
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rate_control_settings_(RateControlSettings::ParseFromFieldTrials()),
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legacy_conference_mode_(false) {}
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SimulcastRateAllocator::~SimulcastRateAllocator() = default;
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@ -228,12 +229,7 @@ void SimulcastRateAllocator::DistributeAllocationToTemporalLayers(
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uint32_t max_bitrate_kbps;
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// Legacy temporal-layered only screenshare, or simulcast screenshare
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// with legacy mode for simulcast stream 0.
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const bool conference_screenshare_mode =
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codec_.mode == VideoCodecMode::kScreensharing &&
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((num_spatial_streams == 1 && num_temporal_streams == 2) || // Legacy.
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(num_spatial_streams > 1 && simulcast_id == 0 &&
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num_temporal_streams == 2)); // Simulcast.
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if (conference_screenshare_mode) {
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if (legacy_conference_mode_ && simulcast_id == 0) {
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// TODO(holmer): This is a "temporary" hack for screensharing, where we
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// interpret the startBitrate as the encoder target bitrate. This is
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// to allow for a different max bitrate, so if the codec can't meet
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@ -253,7 +249,7 @@ void SimulcastRateAllocator::DistributeAllocationToTemporalLayers(
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if (num_temporal_streams == 1) {
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tl_allocation.push_back(target_bitrate_kbps);
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} else {
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if (conference_screenshare_mode) {
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if (legacy_conference_mode_ && simulcast_id == 0) {
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tl_allocation = ScreenshareTemporalLayerAllocation(
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target_bitrate_kbps, max_bitrate_kbps, simulcast_id);
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} else {
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@ -338,4 +334,8 @@ int SimulcastRateAllocator::NumTemporalStreams(size_t simulcast_id) const {
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: codec_.simulcastStream[simulcast_id].numberOfTemporalLayers);
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}
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void SimulcastRateAllocator::SetLegacyConferenceMode(bool enabled) {
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legacy_conference_mode_ = enabled;
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}
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} // namespace webrtc
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@ -38,6 +38,8 @@ class SimulcastRateAllocator : public VideoBitrateAllocator {
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int temporal_id,
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bool base_heavy_tl3_alloc);
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void SetLegacyConferenceMode(bool mode) override;
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private:
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void DistributeAllocationToSimulcastLayers(
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DataRate total_bitrate,
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@ -58,6 +60,7 @@ class SimulcastRateAllocator : public VideoBitrateAllocator {
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const StableTargetRateExperiment stable_rate_settings_;
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const RateControlSettings rate_control_settings_;
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std::vector<bool> stream_enabled_;
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bool legacy_conference_mode_;
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RTC_DISALLOW_COPY_AND_ASSIGN(SimulcastRateAllocator);
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};
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@ -88,8 +88,9 @@ class SimulcastRateAllocatorTest : public ::testing::TestWithParam<bool> {
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EXPECT_EQ(sum, actual.get_sum_bps());
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}
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void CreateAllocator() {
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void CreateAllocator(bool legacy_conference_mode = false) {
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allocator_.reset(new SimulcastRateAllocator(codec_));
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allocator_->SetLegacyConferenceMode(legacy_conference_mode);
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}
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void SetupCodec3SL3TL(const std::vector<bool>& active_streams) {
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@ -669,9 +670,9 @@ INSTANTIATE_TEST_SUITE_P(ScreenshareTest,
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ScreenshareRateAllocationTest,
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::testing::Bool());
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TEST_P(ScreenshareRateAllocationTest, BitrateBelowTl0) {
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TEST_P(ScreenshareRateAllocationTest, ConferenceBitrateBelowTl0) {
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SetupConferenceScreenshare(GetParam());
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CreateAllocator();
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CreateAllocator(true);
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VideoBitrateAllocation allocation =
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allocator_->Allocate(VideoBitrateAllocationParameters(
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@ -684,9 +685,9 @@ TEST_P(ScreenshareRateAllocationTest, BitrateBelowTl0) {
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EXPECT_EQ(allocation.is_bw_limited(), GetParam());
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}
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TEST_P(ScreenshareRateAllocationTest, BitrateAboveTl0) {
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TEST_P(ScreenshareRateAllocationTest, ConferenceBitrateAboveTl0) {
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SetupConferenceScreenshare(GetParam());
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CreateAllocator();
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CreateAllocator(true);
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uint32_t target_bitrate_kbps =
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(kLegacyScreenshareTargetBitrateKbps + kLegacyScreenshareMaxBitrateKbps) /
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@ -704,10 +705,10 @@ TEST_P(ScreenshareRateAllocationTest, BitrateAboveTl0) {
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EXPECT_EQ(allocation.is_bw_limited(), GetParam());
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}
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TEST_F(ScreenshareRateAllocationTest, BitrateAboveTl1) {
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TEST_F(ScreenshareRateAllocationTest, ConferenceBitrateAboveTl1) {
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// This test is only for the non-simulcast case.
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SetupConferenceScreenshare(false);
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CreateAllocator();
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CreateAllocator(true);
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VideoBitrateAllocation allocation =
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allocator_->Allocate(VideoBitrateAllocationParameters(
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@ -84,16 +84,8 @@ bool SimulcastUtility::ValidSimulcastParameters(const VideoCodec& codec,
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}
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bool SimulcastUtility::IsConferenceModeScreenshare(const VideoCodec& codec) {
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if (codec.mode != VideoCodecMode::kScreensharing ||
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NumberOfTemporalLayers(codec, 0) != 2) {
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return false;
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}
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// Fixed default bitrates for legacy screenshare layers mode.
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return (codec.numberOfSimulcastStreams == 0 && codec.maxBitrate == 1000) ||
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(codec.numberOfSimulcastStreams >= 1 &&
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codec.simulcastStream[0].maxBitrate == 1000 &&
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codec.simulcastStream[0].targetBitrate == 200);
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return codec.mode == VideoCodecMode::kScreensharing &&
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codec.legacy_conference_mode;
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}
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int SimulcastUtility::NumberOfTemporalLayers(const VideoCodec& codec,
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@ -68,6 +68,10 @@ VideoCodec VideoCodecInitializer::VideoEncoderConfigToVideoCodec(
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break;
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}
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video_codec.legacy_conference_mode =
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config.content_type == VideoEncoderConfig::ContentType::kScreen &&
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config.legacy_conference_mode;
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// TODO(nisse): The plType field should be deleted. Luckily, our
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// callers don't need it.
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video_codec.plType = 0;
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@ -42,7 +42,8 @@ static const uint32_t kDefaultTargetBitrateBps = 2000000;
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static const uint32_t kDefaultMaxBitrateBps = 2000000;
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static const uint32_t kDefaultMinTransmitBitrateBps = 400000;
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static const int kDefaultMaxQp = 48;
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static const uint32_t kScreenshareTl0BitrateBps = 200000;
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static const uint32_t kScreenshareTl0BitrateBps = 120000;
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static const uint32_t kScreenshareConferenceTl0BitrateBps = 200000;
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static const uint32_t kScreenshareCodecTargetBitrateBps = 200000;
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static const uint32_t kScreenshareDefaultFramerate = 5;
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// Bitrates for the temporal layers of the higher screenshare simulcast stream.
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@ -126,7 +127,7 @@ class VideoCodecInitializerTest : public ::testing::Test {
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VideoStream DefaultScreenshareStream() {
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VideoStream stream = DefaultStream();
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stream.min_bitrate_bps = 30000;
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stream.target_bitrate_bps = kScreenshareTl0BitrateBps;
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stream.target_bitrate_bps = kScreenshareCodecTargetBitrateBps;
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stream.max_bitrate_bps = 1000000;
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stream.max_framerate = kScreenshareDefaultFramerate;
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stream.num_temporal_layers = 2;
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@ -174,6 +175,23 @@ TEST_F(VideoCodecInitializerTest, SingleStreamVp8ScreenshareInactive) {
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EXPECT_EQ(0U, bitrate_allocation.get_sum_bps());
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}
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TEST_F(VideoCodecInitializerTest, TemporalLayeredVp8ScreenshareConference) {
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SetUpFor(VideoCodecType::kVideoCodecVP8, 1, 2, true);
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streams_.push_back(DefaultScreenshareStream());
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EXPECT_TRUE(InitializeCodec());
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bitrate_allocator_->SetLegacyConferenceMode(true);
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EXPECT_EQ(1u, codec_out_.numberOfSimulcastStreams);
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EXPECT_EQ(2u, codec_out_.VP8()->numberOfTemporalLayers);
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VideoBitrateAllocation bitrate_allocation =
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bitrate_allocator_->Allocate(VideoBitrateAllocationParameters(
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kScreenshareCodecTargetBitrateBps, kScreenshareDefaultFramerate));
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EXPECT_EQ(kScreenshareCodecTargetBitrateBps,
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bitrate_allocation.get_sum_bps());
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EXPECT_EQ(kScreenshareConferenceTl0BitrateBps,
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bitrate_allocation.GetBitrate(0, 0));
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}
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TEST_F(VideoCodecInitializerTest, TemporalLayeredVp8Screenshare) {
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SetUpFor(VideoCodecType::kVideoCodecVP8, 1, 2, true);
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streams_.push_back(DefaultScreenshareStream());
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@ -780,6 +780,8 @@ void VideoStreamEncoder::ReconfigureEncoder() {
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rate_allocator_ =
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settings_.bitrate_allocator_factory->CreateVideoBitrateAllocator(codec);
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rate_allocator_->SetLegacyConferenceMode(
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encoder_config_.legacy_conference_mode);
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// Reset (release existing encoder) if one exists and anything except
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// start bitrate or max framerate has changed.
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